Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Semiconductor materials and devices, Catalytic Processes in Materials Science, Electronic and Structural Properties of Oxides, and Advancements in Battery Materials.
Pillared Laminar Vermiculite Membranes with Tunable Monovalent and Multivalent Ion Selectivity
Reversible parts-per-trillion-level detection of perfluorooctane sulfonic acid in tap water using field-effect transistor sensors
Surface engineering of polymeric membranes with metal oxides for improved fouling resistance and superior oil-water separation
Electrochemical Oxidation of Perfluorooctanoic Acid on a Bi <sub>2</sub> O <sub>3</sub> –SnO <sub>2</sub> /Ti <sub>4</sub> O <sub>7</sub> Reactive Electrochemical Membrane: Application to Groundwater Treatment with Mechanistic Insights
Suppressing Atmospheric Degradation of Sulfide-Based Solid Electrolytes via Ultrathin Metal Oxide Layers
Protein-activated atomic layer deposition for robust crude-oil-repellent hierarchical nano-armored membranes
Montmorillonite Membranes with Tunable Ion Transport by Controlling Interlayer Spacing
Insights into the reactivity and lithium plating mechanisms of ultra-thin metal oxide coatings for anode-free solid-state lithium metal batteries
Tunable Ion Transport with Freestanding Vermiculite Membranes
Advanced Materials for Energy-Water Systems: The Central Role of Water/Solid Interfaces in Adsorption, Reactivity, and Transport
Vapor-phase grafting of a model aminosilane compound to Al2O3, ZnO, and TiO2 surfaces prepared by atomic layer deposition
Surface Zeta Potential of ALD-Grown Metal-Oxide Films
Electronic Conductivity of Nanoporous Indium Oxide Derived from Sequential Infiltration Synthesis
Visible‐Light‐Activated Photocatalytic Films toward Self‐Cleaning Membranes
Polyphenol‐Sensitized Atomic Layer Deposition for Membrane Interface Hydrophilization
Self‐Cleaning Membranes: Visible‐Light‐Activated Photocatalytic Films toward Self‐Cleaning Membranes (Adv. Funct. Mater. 34/2020)
Polycaprolactone: A Promising Addition to the Sequential Infiltration Synthesis Polymer Family Identified through <i>In Situ</i> Infrared Spectroscopy
Multifunctional Films Deposited by Atomic Layer Deposition for Tailored Interfaces of Electrochemical Systems
Nanometer-Thick Mg<i><sub>x</sub></i>Zn<sub>(1–<i>x</i>)</sub>O Ternary Films for Photovoltaics
Tailored PEDOT:PSS hole transport layer for higher performance in perovskite solar cells: Enhancement of electrical and optical properties with improved morphology
The chemical physics of sequential infiltration synthesis—A thermodynamic and kinetic perspective
Crude-Oil-Repellent Membranes by Atomic Layer Deposition: Oxide Interface Engineering
Novel ALD Chemistry Enabled Low-Temperature Synthesis of Lithium Fluoride Coatings for Durable Lithium Anodes
Chinese Ink: A Powerful Photothermal Material for Solar Steam Generation
Directly Formed Alucone on Lithium Metal for High-Performance Li Batteries and Li–S Batteries with High Sulfur Mass Loading
Janus Membranes via Diffusion‐Controlled Atomic Layer Deposition
Sequential Infiltration Synthesis of Al2O3 in Polyethersulfone Membranes
Mechanistic understanding of tungsten oxide in-plane nanostructure growth <i>via</i> sequential infiltration synthesis
Large Area Picosecond Photodetector (LAPPD<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline" overflow="scroll" id="d1e366" altimg="si3.gif"><mml:msup><mml:mrow/><mml:mrow><mml:mi mathvariant="normal">TM</mml:mi></mml:mrow></mml:msup></mml:math>) - Pilot production and development status
Lithium metal protected by atomic layer deposition metal oxide for high performance anodes